// sg_time.cxx -- data structures and routines for managing time related stuff. // // Written by Curtis Olson, started August 1997. // // Copyright (C) 1997 Curtis L. Olson - http://www.flightgear.org/~curt // // This library is free software; you can redistribute it and/or // modify it under the terms of the GNU Library General Public // License as published by the Free Software Foundation; either // version 2 of the License, or (at your option) any later version. // // This library is distributed in the hope that it will be useful, // but WITHOUT ANY WARRANTY; without even the implied warranty of // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU // Library General Public License for more details. // // You should have received a copy of the GNU General Public License // along with this program; if not, write to the Free Software // Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA. // // $Id$ #include #include #include // for errno #include #include #include #include #include #ifdef HAVE_SYS_TIME_H # include // for get/setitimer, gettimeofday, struct timeval #endif #ifdef HAVE_UNISTD_H # include // for gettimeofday() #endif #include // for NAN #include #include #include #include "sg_time.hxx" #include "timezone.h" #include "lowleveltime.h" #define DEGHR(x) ((x)/15.) #define RADHR(x) DEGHR(x*SGD_RADIANS_TO_DEGREES) using std::string; static const double MJD0 = 2415020.0; static const double J2000 = 2451545.0 - MJD0; static const double SIDRATE = 0.9972695677; // tzContainer stores all the current Timezone control points/ std::unique_ptr static_tzContainer; void SGTime::init( const SGGeod& location, const SGPath& root, time_t init_time ) { gst_diff = -9999.0; if ( init_time ) { cur_time = init_time; } else { cur_time = time(NULL); } char* gmt = asctime(gmtime(&cur_time)); char* local = asctime(localtime(&cur_time)); gmt[strlen(gmt) - 1] = '\0'; local[strlen(local) - 1] = '\0'; SG_LOG( SG_EVENT, SG_DEBUG, "Current greenwich mean time = " << gmt); SG_LOG( SG_EVENT, SG_DEBUG, "Current local time = " << local); if ( !root.isNull()) { if (!static_tzContainer.get()) { SGPath zone( root ); zone.append( "zone.tab" ); SG_LOG( SG_EVENT, SG_INFO, "Reading timezone info from: " << zone ); std::string zs = zone.utf8Str(); static_tzContainer.reset(new SGTimeZoneContainer( zs.c_str() )); } SGTimeZone* nearestTz = static_tzContainer->getNearest(location); SGPath name( root ); name.append( nearestTz->getDescription() ); zonename = name.utf8Str(); SG_LOG( SG_EVENT, SG_DEBUG, "Using zonename = " << zonename ); } else { zonename.erase(); } } SGTime::SGTime( const SGGeod& location, const SGPath& root, time_t init_time ) { init(location, root, init_time); } SGTime::SGTime( const SGPath& root ) { init( SGGeod(), root, 0 ); } SGTime::SGTime() { init( SGGeod(), SGPath(), 0 ); } SGTime::~SGTime() { } // given Julian Date and Longitude (decimal degrees West) compute // Local Sidereal Time, in decimal hours. // // Provided courtesy of ecdowney@noao.edu (Elwood Downey) static double sidereal_precise( double mjd, double lng ) { /* printf ("Current Lst on JD %13.5f at %8.4f degrees West: ", mjd + MJD0, lng); */ // convert to required internal units lng *= SGD_DEGREES_TO_RADIANS; // compute LST and print double gst = sgTimeCalcGST( mjd ); double lst = gst - RADHR( lng ); lst -= 24.0 * floor( lst / 24.0 ); // printf ("%7.4f\n", lstTmp); return lst; } // return a courser but cheaper estimate of sidereal time static double sidereal_course( time_t cur_time, const struct tm *gmt, double lng ) { time_t start_gmt, now; double diff, part, days, hours, lstTmp; now = cur_time; start_gmt = sgTimeGetGMT(gmt->tm_year, 2, 21, 12, 0, 0); diff = (now - start_gmt) / (3600.0 * 24.0); part = fmod(diff, 1.0); days = diff - part; hours = gmt->tm_hour + gmt->tm_min/60.0 + gmt->tm_sec/3600.0; lstTmp = (days - lng)/15.0 + hours - 12; while ( lstTmp < 0.0 ) { lstTmp += 24.0; } return lstTmp; } // Update the time related variables void SGTime::update( const SGGeod& location, time_t ct, long int warp ) { double gst_precise, gst_course; tm * gmt = &m_gmt; // get current Unix calendar time (in seconds) // warp += warp_delta; if ( ct ) { cur_time = ct + warp; } else { cur_time = time(NULL) + warp; } // get GMT break down for current time memcpy( gmt, gmtime(&cur_time), sizeof(tm) ); // calculate modified Julian date starting with current mjd = sgTimeCurrentMJD( ct, warp ); // add in partial day mjd += (gmt->tm_hour / 24.0) + (gmt->tm_min / (24.0 * 60.0)) + (gmt->tm_sec / (24.0 * 60.0 * 60.0)); // convert "back" to Julian date + partial day (as a fraction of one) jd = mjd + MJD0; // printf(" Current Longitude = %.3f\n", FG_Longitude * SGD_RADIANS_TO_DEGREES); // Calculate local side real time if ( gst_diff < -100.0 ) { // first time through do the expensive calculation & cheap // calculation to get the difference. SG_LOG( SG_EVENT, SG_DEBUG, " First time, doing precise gst" ); gst_precise = gst = sidereal_precise( mjd, 0.00 ); gst_course = sidereal_course( cur_time, gmt, 0.00 ); gst_diff = gst_precise - gst_course; lst = sidereal_course( cur_time, gmt, -location.getLongitudeDeg() ) + gst_diff; } else { // course + difference should drift off very slowly gst = sidereal_course( cur_time, gmt, 0.00 ) + gst_diff; lst = sidereal_course( cur_time, gmt, -location.getLongitudeDeg() ) + gst_diff; } } // Given lon/lat, update timezone information and local_offset void SGTime::updateLocal( const SGGeod& aLocation, const SGPath& root ) { SGGeod location(aLocation); if (!aLocation.isValid()) { location = SGGeod(); } time_t currGMT; time_t aircraftLocalTime; SGTimeZone* nearestTz = static_tzContainer->getNearest(location); SGPath zone( root ); zone.append ( nearestTz->getDescription() ); zonename = zone.utf8Str(); //Avoid troubles when zone.tab hasn't got the right line endings if (zonename[zonename.size()-1] == '\r') { zonename[zonename.size()-1]=0; zone = SGPath(zonename); } currGMT = sgTimeGetGMT( gmtime(&cur_time) ); std::string zs = zone.utf8Str(); aircraftLocalTime = sgTimeGetGMT( (fgLocaltime(&cur_time, zs.c_str())) ); local_offset = aircraftLocalTime - currGMT; // cout << "Using " << local_offset << " as local time offset Timezone is " // << zonename << endl; } // given a date in months, mn, days, dy, years, yr, return the // modified Julian date (number of days elapsed since 1900 jan 0.5), // mjd. Adapted from Xephem. double sgTimeCalcMJD(int mn, double dy, int yr) { double mjd; // internal book keeping data static double last_mjd, last_dy; static int last_mn, last_yr; int b, d, m, y; long c; if (mn == last_mn && yr == last_yr && dy == last_dy) { mjd = last_mjd; } m = mn; y = (yr < 0) ? yr + 1 : yr; if (mn < 3) { m += 12; y -= 1; } if (yr < 1582 || (yr == 1582 && (mn < 10 || (mn == 10 && dy < 15)))) { b = 0; } else { int a; a = y/100; b = 2 - a + a/4; } if (y < 0) { c = (long)((365.25*y) - 0.75) - 694025L; } else { c = (long)(365.25*y) - 694025L; } d = (int)(30.6001*(m+1)); mjd = b + c + d + dy - 0.5; last_mn = mn; last_dy = dy; last_yr = yr; last_mjd = mjd; return mjd; } // return the current modified Julian date (number of days elapsed // since 1900 jan 0.5), mjd. double sgTimeCurrentMJD( time_t ct, long int warp ) { struct tm m_gmt; // copy of system gmtime(&time_t) structure struct tm *gmt = &m_gmt; // get current Unix calendar time (in seconds) // warp += warp_delta; time_t cur_time; if ( ct ) { cur_time = ct + warp; } else { cur_time = time(NULL) + warp; } // get GMT break down for current time memcpy( gmt, gmtime(&cur_time), sizeof(tm) ); // calculate modified Julian date // t->mjd = cal_mjd ((int)(t->gmt->tm_mon+1), (double)t->gmt->tm_mday, // (int)(t->gmt->tm_year + 1900)); double mjd = sgTimeCalcMJD( (int)(gmt->tm_mon+1), (double)gmt->tm_mday, (int)(gmt->tm_year + 1900) ); return mjd; } // given an mjd, calculate greenwich mean sidereal time, gst double sgTimeCalcGST( double mjd ) { double gst; double day = floor(mjd-0.5)+0.5; double hr = (mjd-day)*24.0; double T, x; T = ((int)(mjd - 0.5) + 0.5 - J2000)/36525.0; x = 24110.54841 + (8640184.812866 + (0.093104 - 6.2e-6 * T) * T) * T; x /= 3600.0; gst = (1.0/SIDRATE)*hr + x; return gst; } /****************************************************************** * The following are some functions that were included as SGTime * members, although they currently don't make use of any of the * class's variables. Maybe this'll change in the future *****************************************************************/ // Return time_t for Sat Mar 21 12:00:00 GMT // time_t sgTimeGetGMT(int year, int month, int day, int hour, int min, int sec) { struct tm mt; mt.tm_mon = month; mt.tm_mday = day; mt.tm_year = year; mt.tm_hour = hour; mt.tm_min = min; mt.tm_sec = sec; mt.tm_isdst = -1; // let the system determine the proper time zone #if defined(SG_WINDOWS) return _mkgmtime(&mt); #elif defined( HAVE_TIMEGM ) return ( timegm(&mt) ); #else #error Unix platforms should have timegm #endif } // format time char* sgTimeFormatTime( const struct tm* p, char* buf ) { sprintf( buf, "%d/%d/%2d %d:%02d:%02d", p->tm_mon, p->tm_mday, p->tm_year, p->tm_hour, p->tm_min, p->tm_sec); return buf; }